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Displaying 17,611 - 17,620 of 64,641 Publications- Understanding of formation of irreversible Hbonds in cellulose is important in a number of fields. For example, fields as diverse as pulp and paper and enzymatic saccharification of cellulose are affected. In the present investigation, the phenomenon of formation of irreversible H-bonds is studied in a variety of celluloses and under two different drying conditions. Avicel and amorphous celluloses along with those from wood and tunicate were investigated. Sample deuteration was used to form deuterated Hbonds which provided valuable information. Samples of the deuterated and non-deuterated...AuthorsUmesh P. Agarwal, Sally Ralph, Richard Reiner, Nicole M. StarkSourceProceedings of the 18th ISWFPC (International Symposium on Wood, Fiber, and Pulping Chemistry) held in Vienna (Sept 9 -11, 2015). 2015; pp. 18-21.Year2015
- In this study, morphologies and supramolecular structures of CNCs from wood-pulp, cotton, bacteria, tunicate, and cladophora were investigated. TEM was used to study the morphological aspects of the nanocrystals whereas Raman spectroscopy provided information on the cellulose molecular structure and its organization within a CNC. Dimensional differences between the CNCs were found to be significant between the groups of tunicate, bacterial, & cladophora and pulp & cotton CNCs. The former group had the highest aspect ratio whereas the latter the smallest. Based on 380-Raman, the crystallinit...AuthorsUmesh P. Agarwal, Richard Reiner, Christopher G. Hunt, Jeffery Catchmark, E. Johan Foster, Akira IsogaiKeywordsSourceProceedings of the 18th ISWFPC (International Symposium on Wood, Fiber, and Pulping Chemistry) held in Vienna (Sept 9 -11, 2015). 2015; pp. 6-9.Year2015
- Two simple methods based on the 370 cm-1 Raman band intensity were developed for estimation of syringyl-to-guaiacyl (S/G) ratio in woods. The methods, in principle, are representative of the whole cell wall lignin and not just the portion of lignin that gets cleaved to release monomers, for example, during certain S/G chemical analyses. As such, it is like the whole-cell-wall NMR methods. The Raman analysis is quick, free of the use of harmful chemicals, carried out nondestructively, and is insensitive to the wet or dry state of the sample. The only limitation is that a wood sample should...AuthorsUmesh P. Agarwal, Sally Ralph, Dharshana Padmakshan, Sarah Liu, Steven D. Karlen, Cliff Foster, John RalphKeywordsSourceProceedings of the 18th ISWFPC (International Symposium on Wood, Fiber, and Pulping Chemistry) held in Vienna (Sept 9 -11, 2015). 2015; pp. 333-336.Year2015
- The larch casebearer [Coleophora laricella (Hubner)], a non-native insect, continues to impact western larch (Larix occidentalis Nutt.) through defoliation events in the Pacific Northwest. Biological control programs starting in the 1960s released seven species of parasitoid wasps to control C. laricella outbreaks. However, information about current population dynamics of C. laricella and associated parasitoids remains lacking. Therefore, the goal of this study was to document the presence, current distributions, densities, and parasitism rates of introduced and native parasitoid wasps...AuthorsM. Miller-Pierce, D. C. Shaw, A. Demarco, P. T. OesterSourceEnvironmental EntomologyYear2015
- NO2 and SO2 are the primary pollutants produced by industrial facilities of the Athabasca Oil sand Region (AOSR), Alberta, Canada. The major emission sources are the upgrader stacks for SO2 and stacks, mine fleets and vehicles for NO2. After emitting from the sources, NO2 and SO2 undergo dilution and chemical reaction. The highest NO2 and SO2 deposition occurred in major industrial operation areas and Fort McMurray. However, concentrations of NH3 and HNO3 were also greater outside of the AOSR industrial activities, mainly in its southern part. Ammonia increased levels were possibly also...AuthorsYu-Mei Hsu, Andrzej BytnerowiczSourceIn: Clair, T.A.; Percy, K.E., eds. Assessing forest health in the Athabasca Oil Sands Region. WBEA Technical Report: 8-39. Chapter 2.Year2015
- The conversion of agricultural lands to forests has increased worldwide over the past few decades for multiple reasons including increasing forest connectivity and wildlife habitat. However, previous land cover and competing vegetation often impede afforestation. We established 219 plots in 29 Quercus plantations on four previous land cover types (LCT): Clover, Soybeans, Woody Brush, and Herbaceous Weeds. Plantations were located in Illinois, USA and were sampled 15–18 years after planting. Sampling data for all trees (planted and volunteer) included species, diameter, and vine presence on...AuthorsJoshua B. Nickelson, Eric J. Holzmueller, John W. Groninger, Damon B. LesmeisterKeywordsSourceForests 6: 3123-3135.Year2015
- We describe recent advances in biophysical and social aspects of risk and their potential combined contribution to improve mitigation planning on fire-prone landscapes. The methods and tools provide an improved method for defining the spatial extent of wildfire risk to communities compared to current planning processes. They also propose an expanded role for social science to improve understanding of community-wide risk perceptions and to predict property owners’ capacities and willingness to mitigate risk by treating hazardous fuels and reducing the susceptibility of dwellings. In...AuthorsAlan Ager, Jeffrey D. Kline, A. Paige FisherSourceRisk Analysis 35(8): 1393-1406.Year2015
- Ecologists frequently try to predict the future geographic distributions of species. Most studies assume that the current distribution of a species reflects its environmental requirements (i.e., the species’ niche). However, the current distributions of many species are unlikely to be at equilibrium with the current distribution of environmental conditions, both because of ongoing invasions and because the distribution of suitable environmental conditions is always changing. This mismatch between the equilibrium assumptions inherent in many analyses and the disequilibrium conditions in the...AuthorsCharles B. Yackulic, James D. Nichols, Janice A. Reid, Ricky DerKeywordsSourceEcology. 96(1): 16-23.Year2015
- Natural forest growth and expansion are important carbon sequestration processes globally. Climate change is likely to increase forest growth in some regions via CO2 fertilization, increased temperatures, and altered precipitation; however, altered disturbance regimes and climate stress (e.g. drought) will act to reduce carbon stocks in forests as well. Observations of asynchrony in forest change is useful in determining current trends in forest carbon stocks, both in terms of forest density (e.g. Mg ha 1) and spatially (extent and location). Monitoring change in natural (unmanaged) areas...AuthorsBrian Buma, Tara M. BarrettSourceGlobal Change Biology. 21: 3445-3454.Year2015
- The success of conifers over much of the world’s terrestrial surface is largely attributable to their tolerance to cold stress (i.e., cold hardiness). Due to an increase in climate variability, climate change may reduce conifer cold hardiness, which in turn could impact ecosystem functioning and productivity in conifer-dominated forests. The expression of cold hardiness is a product of environmental cues (E), genetic differentiation (G), and their interaction (G 9 E), although few studies have considered all components together. To better understand and manage for the impacts of climate...AuthorsSheel Bansal, Bradley J. St. Clair, Constance A. Harrington, Peter GouldKeywordsSourceGlobal Change Biology. 21: 3814-3826.Year2015